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化学很重要:两种化学性质不同的用于光固化聚合的甲基丙烯酰化脱细胞外基质生物树脂的并排比较。

Chemistry matters: A side-by-side comparison of two chemically distinct methacryloylated dECM bioresins for vat photopolymerization.

作者信息

Almalla Ahed, Elomaa Laura, Fribiczer Nora, Landes Timm, Tang Peng, Mahfouz Zeinab, Koksch Beate, Hillebrandt Karl Herbert, Sauer Igor Maximilian, Heinemann Dag, Seiffert Sebastian, Weinhart Marie

机构信息

Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustr. 3, 14195 Berlin, Germany.

Department of Chemistry, Johannes Gutenberg Universität Mainz, Duesbergweg 10-14, 55128 Mainz, Germany.

出版信息

Biomater Adv. 2024 Jun;160:213850. doi: 10.1016/j.bioadv.2024.213850. Epub 2024 Apr 7.

Abstract

Decellularized extracellular matrix (dECM) is an excellent natural source for 3D bioprinting materials due to its inherent cell compatibility. In vat photopolymerization, the use of dECM-based bioresins is just emerging, and extensive research is needed to fully exploit their potential. In this study, two distinct methacryloyl-functionalized, photocrosslinkable dECM-based bioresins were prepared from digested porcine liver dECM through functionalization with glycidyl methacrylate (GMA) or conventional methacrylic anhydride (MA) under mild conditions for systematic comparison. Although the chemical modifications did not significantly affect the structural integrity of the dECM proteins, mammalian cells encapsulated in the respective hydrogels performed differently in long-term culture. In either case, photocrosslinking during 3D (bio)printing resulted in transparent, highly swollen, and soft hydrogels with good shape fidelity, excellent biomimetic properties and tunable mechanical properties (~ 0.2-2.5 kPa). Interestingly, at a similar degree of functionalization (DOF ~ 81.5-83.5 %), the dECM-GMA resin showed faster photocrosslinking kinetics in photorheology resulting in lower final stiffness and faster enzymatic biodegradation compared to the dECM-MA gels, yet comparable network homogeneity as assessed via Brillouin imaging. While human hepatic HepaRG cells exhibited comparable cell viability directly after 3D bioprinting within both materials, cell proliferation and spreading were clearly enhanced in the softer dECM-GMA hydrogels at a comparable degree of crosslinking. These differences were attributed to the additional hydrophilicity introduced to dECM via methacryloylation through GMA compared to MA. Due to its excellent printability and cytocompatibility, the functional porcine liver dECM-GMA biomaterial enables the advanced biofabrication of soft 3D tissue analogs using vat photopolymerization-based bioprinting.

摘要

去细胞外基质(dECM)因其固有的细胞相容性,是3D生物打印材料的优质天然来源。在光固化3D打印中,基于dECM的生物树脂的应用刚刚兴起,需要进行广泛研究以充分挖掘其潜力。在本研究中,通过在温和条件下用甲基丙烯酸缩水甘油酯(GMA)或传统的甲基丙烯酸酐(MA)进行功能化处理,从消化后的猪肝dECM制备了两种不同的甲基丙烯酰基功能化、可光交联的基于dECM的生物树脂,以便进行系统比较。尽管化学修饰并未显著影响dECM蛋白的结构完整性,但封装在各自水凝胶中的哺乳动物细胞在长期培养中的表现有所不同。在任何一种情况下,3D(生物)打印过程中的光交联都会产生透明、高度溶胀且柔软的水凝胶,具有良好的形状保真度、出色的仿生性能和可调的机械性能(约0.2 - 2.5 kPa)。有趣的是,在相似的功能化程度(功能化度DOF约为81.5 - 83.5%)下,与dECM - MA凝胶相比,dECM - GMA树脂在光流变学中显示出更快的光交联动力学,导致最终刚度更低且酶促生物降解更快,但通过布里渊成像评估的网络均匀性相当。虽然在两种材料中进行3D生物打印后,人肝HepaRG细胞直接表现出相当的细胞活力,但在相当的交联程度下,较软的dECM - GMA水凝胶中的细胞增殖和铺展明显增强。这些差异归因于与MA相比,通过GMA进行甲基丙烯酰化给dECM引入了额外的亲水性。由于其出色的可打印性和细胞相容性,功能性猪肝dECM - GMA生物材料能够使用基于光固化3D打印的技术对柔软的3D组织类似物进行先进的生物制造。

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